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首页> 外文期刊>Cortex: A Journal Devoted to the Study of the Nervous System and Behavior >Real-world size coding of solid objects, but not 2-D or 3-D images, in visual agnosia patients with bilateral ventral lesions
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Real-world size coding of solid objects, but not 2-D or 3-D images, in visual agnosia patients with bilateral ventral lesions

机译:实际世界规模的固体物体,但不是2-D或3-D图像,在视觉毒性病变的视觉毒性病变中

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Patients with visual agnosia show severe deficits in recognizing two-dimensional (2-D) images of objects, despite the fact that early visual processes such as figure-ground segmentation, and stereopsis, are largely intact. Strikingly, however, these patients can nevertheless show a preservation in their ability to recognize real-world objects -a phenomenon known as the 'real-object advantage' (ROA) in agnosia. To uncover the mechanisms that support the ROA, patients were asked to identify objects whose size was congruent or incongruent with typical real-world size, presented in different display formats (real objects, 2-D and 3-D images). While recognition of images was extremely poor, real object recognition was surprisingly preserved, but only when physical size matched real-world size. Analogous display format and size manipulations did not influence the recognition of common geometric shapes that lacked real-world size associations. These neuropsychological data provide evidence for a surprising preservation of size-coding of real-world-sized tangible objects in patients for whom ventral contributions to image processing are severely disrupted. We propose that object size information is largely mediated by dorsal visual cortex and that this information, together with detailed representation of object shape which is also subserved by dorsal cortex, serve as the basis of the ROA. (C) 2019 Elsevier Ltd. All rights reserved.
机译:患有视觉毒性的患者显示出识别目的二维(2-D)物体图像的严重缺陷,尽管早期视觉过程如图 - 地面分割和立体内的目光,在很大程度上是完整的。然而,令人惊讶的是,这些患者仍然可以展示他们识别现实世界对象的能力 - 在毒药中被称为“真实物体优势”(ROA)的现象。为了揭示支持ROA的机制,患者被要求识别其大小是一致或不一致的对象,以不同的显示格式呈现(真实对象,2-D和3-D图像)。虽然对图像的识别非常差,但实际的对象识别令人惊讶地保留,但只有在物理尺寸匹配真实尺寸时才。类似的显示格式和大小操纵没有影响识别缺乏真实世界尺寸关联的常见几何形状。这些神经心理数据提供了令人惊讶地保存的令人惊讶的保存真实的实际有形物体,在患者对图像处理的腹部贡献严重中断。我们提出对象大小信息主要由背部视觉皮层介导,并且该信息以及对象形状的详细表示,这些信息也由背部皮质的基础,用作ROA的基础。 (c)2019年elestvier有限公司保留所有权利。

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